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GS7A023602GGT
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GS7A023602GGT Description
GS7A023602GGT Description
The GS7A023602GGT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications requiring stable resistance values under varying thermal conditions. This 14-pin narrow SOIC package features 7 isolated thin-film resistors, each with a 36KΩ resistance and a tight ±2% absolute tolerance (with ±2% ratio tolerance). The device operates within a wide temperature range of 70°C to 125°C (derated) and offers a low temperature coefficient of ±50ppm/°C, ensuring minimal resistance drift. With a maximum voltage rating of 100V and a power rating of 0.7W (0.1W per resistor), it is engineered for reliability in demanding environments. The SOIC-C series construction provides robust ceramic isolation, making it suitable for high-voltage and noise-sensitive circuits.
GS7A023602GGT Features
- Precision Network: 7 isolated resistors with 36KΩ ±2% tolerance and ±50ppm/°C TCR.
- Robust Construction: Ceramic SOIC package ensures durability and thermal stability.
- High Voltage Handling: Supports up to 100V with 0.7W total power dissipation.
- Surface-Mount Design: Gull-wing termination and 1.27mm pitch for easy PCB integration.
- Wide Operating Range: Functions reliably from -55°C to +125°C (non-derated).
- Low Drift: Thin-film technology delivers stable performance over temperature and time.
- Non-Automotive: Not PPAP-capable, ideal for industrial and instrumentation use.
GS7A023602GGT Applications
- Signal Conditioning: Precision voltage dividers in sensor interfaces.
- Medical Electronics: Isolated measurement circuits in diagnostic equipment.
- Test & Measurement: Calibration networks for high-accuracy instruments.
- Industrial Controls: Feedback networks in motor drives and power supplies.
- Telecom Infrastructure: Impedance matching in RF and analog signal chains.
Conclusion of GS7A023602GGT
The GS7A023602GGT excels in applications demanding high precision, thermal stability, and electrical isolation. Its ceramic substrate, thin-film resistors, and tight tolerances make it superior to polymer-based networks in harsh environments. While not suited for automotive use, it is an optimal choice for industrial, medical, and telecom systems where long-term reliability and minimal drift are critical. Engineers will appreciate its balance of performance, compact SOIC footprint, and ease of integration into surface-mount designs.



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